take note

3 things to know: Houston energy events not to miss, podcast to listen to, and more

Here are three things to know in Houston energy transition news this week. Photo via Getty Images

Editor's note: It's a new week — start it strong with three quick things to catch up on in Houston's energy transition: events not to miss, a podcast to stream, and more.

Events not to miss

Add these events to your radar:

  • December 4 - Pumps & Pipes Annual Event is Houston's premier innovation gathering bringing together cross-industry leaders for engaging discussions and top tier networking opportunities. Register.
  • December 7 - Greentown Labs Investor Speaker Series: Both Sides of the Coin will host a thoughtful fireside chat followed by networking. Register.
  • December 19 — UH Tech Bridge's Innov8Hub Pitch Day is your last chance of the year to network with industry experts, and discover the next big thing. Register.

Deadline to be aware of: EnergyTech UP

Transocean, a Switzerland-based offshore energy leader with its United States headquarters in Houston, kicked off its Transocean Open Innovation Challenge this fall. The original deadline has been extended to December 15, and the program is in partnership with the Ion. The submission page is available online.

Finalist selection will be hosted digitally in February, and the demo day and winner announcement will be in March at the Ion. The winner will have the potential opportunity to run a field trial with Transocean,Amajor energy corporation has put its feelers out for Houston innovators solving for challenges within the decarbonization of offshore drilling operations.

The application deadline is December 15 to apply. Learn more.

Podcast to stream: Jason Bock of ZettaWatts on the Energy Tech Startups podcast

For Jason Bock, a cleaner future is personal. That's why his company, ZettaWatts, is making clean energy more affordable and available.

In this Energy Tech Startups episode, we dive deep into the world of energy transition technologies with Beck from ZettaWatts. Jason shares his unique perspective on the evolving energy landscape, the importance of climate journeys, and the innovative solutions ZettaWatts is bringing to the table.

The conversation with Beck offers a glimpse into the exciting world of energy transition. As we move towards a more sustainable future, it's essential to stay informed and engaged with the latest developments in the sector.


Trending News

A View From HETI

Rice University researchers have developed a new method for removing PFAS from water that works 100 times faster than traditional filters. Photo via Rice University.

Rice University researchers have teamed up with South Korean scientists to develop the first eco-friendly technology that captures and destroys toxic “forever chemicals,” or PFAS, in water.

PFAS have been linked to immune system disruption, certain cancers, liver damage and reproductive disorders. They can be found in water, soil and air, as well as in products like Teflon pans, waterproof clothing and food packaging. They do not degrade easily and are difficult to remove.

Thus far, PFAS cleanup methods have relied on adsorption, in which molecules cling to materials like activated carbon or ion-exchange resins. But these methods tend to have limited capacity, low efficiency, slow performance and can create additional waste.

The Rice-led study, published in the journal Advanced Materials, centered on a layered double hydroxide (LDH) material made from copper and aluminum that could rapidly capture PFAS and be used to destroy the chemicals.

The study was led by Rice professor Youngkun Chung, a postdoctoral fellow under the mentorship of Michael S. Wong. It was conducted in collaboration with Seoktae Kang, professor at the Korea Advanced Institute of Science and Technology, and Keon-Ham Kim, professor at Pukyung National University, who first discovered the LDH material.

The team evaluated the LDH material in river water, tap water and wastewater. And, according to Rice, that material’s unique copper-aluminum layers and charge imbalances created an ideal binding environment to capture PFAS molecules.

“To my astonishment, this LDH compound captured PFAS more than 1,000 times better than other materials,” Chung, lead author of the study and now a fellow at Rice’s WaTER (Water Technologies, Entrepreneurship and Research) Institute and Sustainability Institute, said in a news release. “It also worked incredibly fast, removing large amounts of PFAS within minutes, about 100 times faster than commercial carbon filters.”

Next, Chung, along with Rice professors Pedro Alvarez and James Tour, worked to develop an eco-friendly, sustainable method of thermally decomposing the PFAS captured on the LDH material. They heated saturated material with calcium carbonate, which eliminated more than half of the trapped PFAS without releasing toxic by-products.

The team believes the study’s results could potentially have large-scale applications in industrial cleanups and municipal water treatments.

“We are excited by the potential of this one-of-a-kind LDH-based technology to transform how PFAS-contaminated water sources are treated in the near future,” Wong added in the news release. “It’s the result of an extraordinary international collaboration and the creativity of young researchers.”

---

This article originally appeared on our sister site, InnovationMap.

Trending News